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Imaging device and imaging device manufacturing method

a technology of imaging device and manufacturing method, which is applied in the direction of instruments, television systems, and scanning details of television systems, can solve the problems of difficult accuracy in combining a large number of components to produce a camera module, and achieve the effects of convenient sealing of imaging element parts, high functionality, and high accuracy

Inactive Publication Date: 2011-01-20
KONICA MINOLTA INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Benefits of technology

[0025]In accordance with the imaging device according to any of the first to tenth aspects, a plurality of layers at least including an imaging element layer, a lens layer and an actuator layer are laminated to form an imaging device, and it is thus possible to satisfy both higher functionality and higher accuracy in a compact imaging device.
[0026]Further, in accordance with the imaging device according to the second aspect, adjacent layers included in the plurality of layers constituting the imaging device are joined to each other on peripheral portions and frame parts, and it is thus possible to readily seal an imaging element part, a lens part and an actuator part.
[0027]Further, in accordance with the imaging device according to the third aspect, it is possible to change a distance between the lens part and the imaging element part without displacing a direction of an optical axis of the lens part.
[0028]Further, in accordance with the imaging device according to the fourth aspect, another layer having an elastic part for holding the lens part becomes unnecessary, and it is thus possible to seek improvement in assembly accuracy due to simplification of a structure of the imaging device, and reduction in thickness and size of the imaging device.
[0029]Further, in accordance with either the imaging device according to the fifth aspect or the imaging device manufacturing method according to the fourteenth aspect, it is possible to readily and accurately form a wiring part for providing the actuator part with an electric field.
[0030]Further, in accordance with the imaging device according to the sixth aspect, it is possible to readily produce each layer disposed between the imaging element layer and the actuator layer.

Problems solved by technology

Therefore, when the above large number of components are sought to be reduced in size, accurately combining the large number of components to produce a camera module has not been easy.

Method used

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  • Imaging device and imaging device manufacturing method
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  • Imaging device and imaging device manufacturing method

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modified example

[0168]The present invention is not restricted to the foregoing embodiment, and a variety of modifications, improvements and the like can be made within a range not deviating from the gist of the present invention.

[0169]For example, in the above embodiment, the camera module 400 is formed by lamination of ten layers, but this is not restrictive. For example, as for the third lens layer 80, considered can be a configuration where the lens part 81 having the lens power and the frame part F8 are linked by a thin plate-like elastic member formed of the same material as that for the lens part 81 at at least two points around the lens part 81, and the parallel spring lower layer 70 and the parallel spring upper layer 90 are thereby omitted. In other words, as for the third lens layer 80, one formed by linkage of the frame part F8 and the lens part 81 by at least three elastic members from different directions around the lens part 81 may be adopted. It is to be noted that the places provide...

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Abstract

A technique capable of satisfying both higher functionality and higher accuracy in a compact imaging device is sought to be provided. In order to accomplish the above object, an imaging device is formed by lamination of a plurality of layers including: an imaging element layer that has an imaging element part; a lens layer that has a lens part whose distance from the imaging element part is changeable, and is disposed between a subject and the imaging element part; and an actuator layer that has an actuator part to move the lens part, and is disposed between the subject and the imaging element part.

Description

RELATED APPLICATIONS[0001]This application is a U.S. National Phase Application under 35 U.S.C. 371 of International Application No. PCT / JP2009 / 056823, filed with Japanese Patent Office on Apr. 1, 2009, which claims priority to Japanese Patent Application No. 2008-097228, filed Apr. 3, 2008.TECHNICAL FIELD[0002]The present invention relates to a compact imaging device and a manufacturing method therefor.BACKGROUND ART[0003]In recent years, a camera module has often been installed in compact electronic equipment such as a mobile telephone, and has been intended to be further reduced in size.[0004]This camera module has conventionally been required to have a lens barrel and a lens holder that support a lens, a holder that supports an infrared (IR) cut filter, a housing that holds a laminated body made up of a substrate, an imaging element and an optical element, a resin that seals the laminated body, and the like. Therefore, when the above large number of components are sought to be r...

Claims

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Application Information

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IPC IPC(8): H04N5/335G02B7/04B32B38/04
CPCG02B7/04G02B7/102H04N5/2254H04N5/2257Y10T156/1056H01L41/094Y10T156/1052Y10T156/1057B29D11/0073H04N23/57H04N23/55H10N30/2042
Inventor YAMAMOTO, NATSUKIKOSAKA, AKIRATANIMURA, YASUTAKA
Owner KONICA MINOLTA INC